Farrants Helen, Shuai Yichun, Lemon William C, Hernandez Christian Monroy, Yang Shang, Patel Ronak, Qiao Guanda, Frei Michelle S, Grimm Jonathan B, Hanson Timothy L, Tomaska Filip, Turner Glenn C, Stringer Carsen, Keller Philipp J, Beyene Abraham G, Chen Yao, Liang Yajie, Lavis Luke D, Schreiter Eric R
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA, USA.
Department of Neuroscience, Washington University in St. Louis, St. Louis, MO 63110, USA.
bioRxiv. 2023 Jul 19:2023.07.18.549527. doi: 10.1101/2023.07.18.549527.
Genetically encoded fluorescent calcium indicators have revolutionized neuroscience and other biological fields by allowing cellular-resolution recording of physiology during behavior. However, we currently lack bright, genetically targetable indicators in the near infrared that can be used in animals. Here, we describe WHaloCaMP, a modular chemigenetic calcium indicator built from bright dye-ligands and protein sensor domains that can be genetically targeted to specific cell populations. Fluorescence change in WHaloCaMP results from reversible quenching of the bound dye via a strategically placed tryptophan. WHaloCaMP is compatible with rhodamine dye-ligands that fluoresce from green to near-infrared, including several dye-ligands that efficiently label the central nervous system in animals. When bound to a near-infrared dye-ligand, WHaloCaMP1a is more than twice as bright as jGCaMP8s, and shows a 7× increase in fluorescence intensity and a 2.1 ns increase in fluorescence lifetime upon calcium binding. We use WHaloCaMP1a with near-infrared fluorescence emission to image Ca responses in flies and mice, to perform three-color multiplexed functional imaging of hundreds of neurons and astrocytes in zebrafish larvae, and to quantitate calcium concentration using fluorescence lifetime imaging microscopy (FLIM).
基因编码的荧光钙指示剂通过在行为过程中实现细胞分辨率的生理记录,彻底改变了神经科学和其他生物学领域。然而,我们目前缺乏可用于动物的近红外波段明亮且可基因靶向的指示剂。在此,我们描述了WHaloCaMP,一种模块化的化学遗传钙指示剂,它由明亮的染料配体和蛋白质传感器结构域构建而成,可通过基因靶向特定细胞群体。WHaloCaMP中的荧光变化源于通过精心定位的色氨酸对结合染料的可逆淬灭。WHaloCaMP与从绿色到近红外波段发出荧光的罗丹明染料配体兼容,包括几种能有效标记动物中枢神经系统的染料配体。当与近红外染料配体结合时,WHaloCaMP1a的亮度是jGCaMP8s的两倍多,并且在钙结合后荧光强度增加7倍,荧光寿命增加2.1纳秒。我们使用具有近红外荧光发射的WHaloCaMP1a对果蝇和小鼠中的钙反应进行成像,对斑马鱼幼虫中的数百个神经元和星形胶质细胞进行三色多重功能成像,并使用荧光寿命成像显微镜(FLIM)定量钙浓度。